Features of morphology and chemical compositionof native gold from the Murtykty deposit, South Urals

Author:

Chukhareva N.S.1,Belogub E.V.1,Ryzhkova Yu.A.1,Blinov I.A.1,Rassomakhin M.A.1,Novoselov K.A.1

Affiliation:

1. South Urals Federal Research Center of Mineralogy and Geoecology UB RAS, Institute of Mineralogy, Miass, Chelyabinsk oblast, 456317 Russia

Abstract

The morphology and chemical composition of native gold from the Murtykty deposit (South Urals) are discussed in the paper. Native gold is subdivided into fve types: 1) inclusions in sulfdes, 2) grains in fractures and interstices of pyrite and other sulfdes, 3) grains at the boundaries of sulfdes and gangue minerals, 4) inclusions in gangue minerals and their interstices and 5) «free¬ grains from heavy concentrates. The chemical composition of 128 gold grains is studied. In accordance with Ag content (from 6.49 to 30.8 wt. %), native gold from the deposit varies from high- to low-fneness (rare grains). Native gold in sphalerite contains Cu (0.85–2.27 wt. %)., The morphological features of 264 gold grains are quantifed using Image Tool software. The morphological characteristics of native gold from types 1–4 are similar. The data on morphology and size of native gold grains can be used for improvement of technology of gold extraction.

Publisher

South Urals Federal Research Center for Mineralogy and Geoecology of the Urals Branch of the RAS

Reference19 articles.

1. Belogub E.V. (2018) [Information report on results of mineralogical and petrographic study of ores and host rocks of the Murtykty deposit (Bashkortostan) in 2017–2018]. Miass, 47 p. (in Russian)

2. Belogub E.V. (2009) [Supergenesis of sulfde deposits in the southern Urals]. Dissertation for of Doctor of Geological and Mineralogical Sciences. St. Petersburg SPbGU, 617 p. (in Russian)

3. Belogub E.V., Novoselov K.A., Kotlyarov V.A., Fadina I.B. (2006) [Mineralogy of oxidized ores of the gold-polymetallic Deposit IK-Davlyat (southern Urals)]. Zapiski RMO [Proceedings of Russian Mineralogical Society], 135(5), 35–43. (in Russian)

4. Bocharov V.A., Abryutin D.V. (2011) [Technology of gold-bearing ores]. Moscow, MISiS, 420 p. (in Russian)

5. Chryssoulis S.L., McMullen J. (2016) Mineralogical investigation of gold ores. Gold ore processing (Second edition) (ed. M.D. Adams). Amsterdam, Elsevier, 57–93.

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